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首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >On the migration of smooth particle hydrodynamic formulation in Cartesian coordinates to the axisymmetric formulation
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On the migration of smooth particle hydrodynamic formulation in Cartesian coordinates to the axisymmetric formulation

机译:关于直角坐标系中光滑粒子流体动力公式向轴对称公式的迁移

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The smooth particle hydrodynamic (SPH) method has been extended for application to large deformation problems such as high velocity impacts by including the effect of material strength. This paper presents a simple modification of the kernel function that allows the SPH formulation in Cartesian coordinates to be migrated into an axisymmetric formulation. The proposed procedure is first applied to analyse transient deformations of a cylindrical rod impacting a rigid wall (Taylor impact test). A good agreement with published experimental data for the deformed shape is obtained. A sensitivity study of the key parameters required in the SPH formulation is conducted to provide better insight into the SPH modelling approach. Impacts between two bodies at high speed have also been simulated using an axisymmetric SPH code.
机译:光滑粒子流体动力学(SPH)方法已扩展到适用于大变形问题,例如通过考虑材料强度的影响而产生的高速冲击。本文介绍了内核函数的简单修改,该修改允许将笛卡尔坐标系中的SPH公式迁移到轴对称公式中。建议的程序首先用于分析撞击刚性壁的圆柱杆的瞬时变形(泰勒冲击试验)。获得了与已公布的变形数据的实验数据的良好一致性。对SPH配方中所需的关键参数进行了敏感性研究,以更好地了解SPH建模方法。还使用轴对称SPH代码模拟了两个物体之间的高速碰撞。

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